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10

Safety Notes

•  This model may only be used with the operating system designed for it. 

•   Use only switched mode power supply units and transformers that are designed 

for your local power system. 

•  This locomotive must never be supplied with power from more than one power pack. 

•   Pay close attention to the safety notes in the instructions for your operating system.  

•  Not for children under the age of 15. 

•   This product contains magnets. Swallowing more than one magnet may cause 

death in certain circumstances. If necessary, see a doctor immediately.

•  

WARNING!

 Sharp edges and points required for operation. 

Important Notes

•   The operating instructions are a component part of the product and must therefore 

be kept in a safe place as well as included with the product, if the latter is given to 

someone else.

•   The warranty card included with this product specifies the warranty conditions.

•   Please see your authorized LGB dealer for repairs or spare parts.

•   Disposing: www.maerklin.com/en/imprint.html 

Functions 

•   This model is designed for operation on LGB two-rail DC systems with conventio-

nal LGB DC train controllers or power packs (DC, 0 – 24 volts). 

•   Factory-installed multiple protocol decoder (DC, DCC, mfx).

•   The model is programmed with locomotive address 03 for use with the LGB Multi 

Train System (DCC). The locomotive is automatically recognized in operation with mfx. 

•   Steam exhaust synchronized with the wheels 

•   Mfx technology for the Mobile Station/Central Station. 

Name set at the factory: 

Mogul 50

•   The functions can be activated only in parallel. Serial activation of the functions is 

not possible (Please note here the instructions for your controller). 

General Note to Avoid Electromagnetic Interference: 

A permanent, flawless wheel-rail contact is required in order to guarantee operation 

for which a model is designed. Do not make any changes to current-conducting parts.

Mode of Operation Switch 

This model has a four-position switch for the mode of operation. It is located in the 

engineer‘s cab (Figure 1).

Pos. 0  

Locomotive stored on a siding without current

Pos. 1 – 3  Locomotive motor, lighting, and sound turned on

Smoke Unit

In analog operation, the smoke generator synchronized to the wheels is turned off 

due to its power draw. This can be turned on by setting CV 13 from Value 32 to Value 

96, but this may affect the running characteristics when running very slowly – depen-

ding on the current supply. 

Sound

This locomotive has a volume controller (Figure 2). 

The bell and whistle can be activated with the LGB sound activation magnet (17050) 

included with the locomotive. The activation magnet can be clipped into place bet-

ween the ties of most LGB track sections. 

The magnet is positioned to the side under the LGB logo cast into the plastic cover. 

Place the magnet on one side to activate the whistle when the locomotive passes 

over this spot. The bell will sound when the magnet is placed on the other side. 

Multi-Protocol Operation 

Analog Operation

This decoder can also be operated on analog layouts or areas of track that are 

analog. The decoder recognizes alternating current (DC) and automatically adapts 

to the analog track voltage. All functions that were set under mfx or DCC for analog 

operation are active (see Digital Operation).

The built-in sound functions come from the factory inactive for analog operation.

Digital Operation

The decoders are multi-protocol decoders. These decoders can be used under the 

following digital protocols: mfx or DCC.

The digital protocol with the most possibilities is the highest order digital protocol. 

The sequence of digital protocols in descending order is:

Priority 1: mfx; Priority 2: DCC; Priority 3: DC

Note:

 Digital protocols can influence each other. For trouble-free operation, we re-

commend deactivating those digital protocols not needed by using CV 50. Deactivate 

unneeded digital protocols at this CV if your controller supports this function. 

If two or more digital protocols are recognized in the track, the decoder automatically 

takes on the highest order digital protocol, example: mfx/DCC; the decoder takes on 

the mfx digital protocol (see previous table). 

Summary of Contents for 20280

Page 1: ...Modell der Dampflok Mogul 50 20280...

Page 2: ...2...

Page 3: ...CV 26 Tabel functiemapping DCC 40 Afbeeldingen 42 Onderdelen 44 Indice del contenuto Pagina Avvertenze per la sicurezza 34 Avvertenze importanti 34 Funzioni 34 Avvertenze per ilfunzionamento 34 Eserci...

Page 4: ...estellt Pos 1 3 Lokmotor Beleuchtung und Sound eingeschaltet Dampfentwickler Im Analogbetrieb ist der radsynchrone Raucherzeuger aus Gr nden des Leistungsbe darfs ausgeschaltet Dieser kann durch Setze...

Page 5: ...esse Lange Adresse Traktionsadresse Adressbereich 1 127 kurze Adresse Traktionsadresse 1 10239 lange Adresse Jede Adresse ist manuell programmierbar Kurze oder lange Adresse wird ber die CV 29 ausgew...

Page 6: ...e Weiterentwicklung der bishe rigen LGB Decoder Technologie Dem entsprechend stehen weit mehr Funktionali t ten zur Verf gung als bisher blich Um diese Funktionalit ten an die pers nlichen Bed rfnisse...

Page 7: ...ze CV 1 Adresse 1 127 oder die lange Adresse CV 17 CV 18 Adresse 1 10239 gesteuert werden Grunds tz lich sind immer beide Adressen belegt Mit CV 29 Bit 5 wird festgelegt welche der beiden Adressen akt...

Page 8: ...er I 0 255 15 56 Motorregelung Regeleinfluss 0 255 24 57 Dampfsto 1 0 255 0 58 Dampfsto 2 0 255 66 Register Belegung Bereich Default 60 Multibahnhofsansage Bit 0 3 Anzahl der Bahnh fe Bit 4 Endansage...

Page 9: ...255 352 355 Funktionsmapping Sensor 2 vorw rts 0 255 357 360 Funktionsmapping Funktion FL r ckw rts 0 255 357 1 362 365 Funktionsmapping Funktion F1 r ckw rts 0 255 363 16 367 370 Funktionsmapping Fun...

Page 10: ...n It is located in the engineer s cab Figure 1 Pos 0 Locomotive stored on a siding without current Pos 1 3 Locomotive motor lighting and sound turned on Smoke Unit In analog operation the smoke genera...

Page 11: ...s and multiple unit address 1 10239 for long address Every address can be programmed manually Short or long address is selected by means of CV 29 Bit 5 A multiple unit address that is being used deact...

Page 12: ...tions are available on this decoder than was previously customary More possibilities for making settings on the decoder are how ever necessary compared to previous decoders in order to be able to adap...

Page 13: ...V 18 address 1 10239 Both addresses are basically always occupied CV 29 Bit 5 is used to determine which of the two addresses is currently valid The settings for the long address are calculated as fol...

Page 14: ...trol control parameter I 0 255 15 56 Motor control control influence 0 255 24 57 steam chuff 1 0 255 0 58 steam chuff 2 0 255 66 Register Assignment Range Default 60 Multi station announcement Bit 0 3...

Page 15: ...255 352 355 Function mapping Sensor 2 forwards 0 255 357 360 Function mapping Function FL backwards 0 255 357 1 362 365 Function mapping Function F1 backwards 0 255 363 16 367 370 Function mapping Fu...

Page 16: ...ant Commutateur de mode d exploitation Dans la cabine de conduite du mod le se trouve un interrupteur 4 positions pour la s lection du mode d exploitation fig 1 Pos 0 Locomotive gar e hors tension Pos...

Page 17: ...12 restreinte et avec la station centrale 60213 60214 60215 voir Aide au niveau de la station centrale Protocole DCC Adressage Adresse br ve adresse longue adresse de traction Champ d adresse 1 127 ad...

Page 18: ...r int gr dans votre locomotive est une version am lior e de l ancien d codeur LGB Les fonctions disponibles sont donc bien plus nombreuses que jusqu alors Or l adaptation de ces fonctions aux besoins...

Page 19: ...17 CV 18 adresse 1 10239 En principe les deux adresses sont toujours affect es La CV 29 Bit 5 permet de d finir l adresse valider Les param tres pour l adresse longue se calculent de la mani re suivan...

Page 20: ...gulation du moteur param tre de r gulation I 0 255 15 56 R gulation du moteur influence de r gulation 0 255 24 57 jet de vapeur 1 0 255 0 58 jet de vapeur 2 0 255 66 Registres Affectation Domaine Vale...

Page 21: ...5 Mapping de fonctions Capteur 2 en avant 0 255 357 360 Mapping de fonctions fonction FL en arri re 0 255 357 1 362 365 Mapping de fonctions fonction F1 en arri re 0 255 363 16 367 370 Mapping de fonc...

Page 22: ...1 Pos 0 Loc stroomloos Pos 1 3 Locmotor verlichting en geluid zijn ingeschakeld Rookgenerator In het analoge bedrijf is in verband met het opgenomen vermogen de wielsynchrone rookgenerator uitgeschak...

Page 23: ...ort adres lang adres tractie adres Adresbereik 1 127 kort adres tractie adres 1 10239 lang adres Elk adres is handmatig programmeerbaar Kort of lang adres wordt met CV 29 bit 5 gekozen Een toegepast t...

Page 24: ...de LGB decoder Daarom zijn er aanzienlijk meer functies beschik baar dan tot nu toe gebruikelijk Om die functies aan de persoonlijke behoeften te kunnen aanpassen zijn er ook meer instelmogelijkheden...

Page 25: ...eenkomen Lange adressen De decoder kan onder DCC na keuze via het korte CV 1 adres 1 127 of via het lange adres CV 17 CV 18 adres 1 10239 bestuurd worden In principe zijn beide adres sen bezet Met CV...

Page 26: ...lparameter I 0 255 15 56 Motorregeling Regelinvloed 0 255 24 57 stoomstoten 1 0 255 0 58 stoomstoten 2 0 255 66 Register Belegging Bereik Default 60 Multi station omroep Bit 0 3 aantal stations Bit 4...

Page 27: ...55 352 355 Functiemapping sensor 2 vooruit 0 255 357 360 Functiemapping functie FL achteruit 0 255 357 1 362 365 Functiemapping functie F1 achteruit 0 255 363 16 367 370 Functiemapping functie F2 acht...

Page 28: ...seg n las previsiones se requiere un contacto rueda carril de los veh culos permanente sin anomal as No realice ninguna modifi caci n en piezas conductoras de la corriente Selector de modo de funcion...

Page 29: ...60213 60214 60215 Protocolo DCC Direccionamiento Direcci n corta Direcci n larga Direcci n de tracci n Intervalo de direcciones 1 127 Direcci n corta direcci n de tracci n 1 10239 Direcci n larga Cada...

Page 30: ...r LGB hasta ahora existente Como consecuencia de ello este decoder ofrece muchas m s funcionalidades que las hasta ahora habituales Sin embargo para poder adaptar estas funcionalidades a las necesidad...

Page 31: ...1 direcci n 1 127 o mediante la direcci n larga CV 17 y CV 18 direcci n 1 10239 Por norma ambas direcciones est n siempre asignadas Con CV 29 Bit 5 se define cu l de ambas direcciones es la actualment...

Page 32: ...laci n I 0 255 15 56 Regulaci n de motor factor de regulaci n 0 255 24 57 sonido de golpes de vapor 1 0 255 0 58 sonido de golpes de vapor 2 0 255 66 Registro Configuraci n Rango Valor por defecto 60...

Page 33: ...5 347 350 Mapeado de funci n Sensor 1 hacia delante 0 255 352 355 Mapeado de funci n Sensor 2 hacia delante 0 255 357 360 Mapeado de funci n FL hacia atr s 0 255 357 1 362 365 Mapeado de funci n F1 ha...

Page 34: ...di guida Figure 1 Posiz 0 Locomotiva accantonata senza corrente Posiz 1 3 Motore della locomotiva illuminazione e effetti sonori attivati Generatore di vapore Nel funzionamento analogico il generator...

Page 35: ...zzi da 1 a 127 indirizzo breve indirizzo unit di trazione da 1 a 10239 indirizzo lungo Ciascun indirizzo programmabile manualmente L indirizzo breve oppure lungo viene selezionato tramite la CV 29 Bit...

Page 36: ...va costituisce una ulteriore elaborazi one dei precedenti Decoder LGB Di conseguenza si hanno a disposizione molto pi numerose funzionalit di quanto sinora consueto Per potere adattare queste funziona...

Page 37: ...DCC a piacere tramite l indirizzo breve CV 1 indirizzi 1 127 oppure l indirizzo lungo CV 17 CV 18 indirizzi 1 10239 Sostan zialmente entrambi gli indirizzi sono sempre occupati Con la CV 29 Bit 5 vien...

Page 38: ...e motore parametro di regolaz I 0 255 15 56 Regolazione motore influenza sulla regolaz 0 255 24 57 sonido de golpes de vapor 1 0 255 0 58 sonido de golpes de vapor 2 0 255 66 Registro Assegnazione Cam...

Page 39: ...i sensore 1 in avanti 0 255 352 355 Mappatura funzioni sensore 2 in avanti 0 255 357 360 Mappatura funzioni Funzione FL indietro 0 255 357 1 362 365 Mappatura funzioni Funzione F1 indietro 0 255 363 1...

Page 40: ...4 2 1 128 64 32 16 8 4 2 1 292 295 F7 128 64 32 16 8 4 2 1 128 64 32 16 8 4 2 1 128 64 32 16 8 4 2 1 128 64 32 16 8 4 2 1 297 300 F8 128 64 32 16 8 4 2 1 128 64 32 16 8 4 2 1 128 64 32 16 8 4 2 1 128...

Page 41: ...4 32 16 8 4 2 1 128 64 32 16 8 4 2 1 128 64 32 16 8 4 2 1 128 64 32 16 8 4 2 1 397 400 F8 128 64 32 16 8 4 2 1 128 64 32 16 8 4 2 1 128 64 32 16 8 4 2 1 128 64 32 16 8 4 2 1 402 405 F9 128 64 32 16 8...

Page 42: ...1 2 3 Bild 1 Betriebsartenschalter Fig 1 Power control switch Img 1 Modes d exploitation Afb 1 Bedrijfssoorten schakelaar Fig 1 Selector de modo de funcionamiento Figure 1 Commutatore del tipo di eser...

Page 43: ...43 Bild 2 Lautst rkeregler Fig 2 Volume Control Img 2 Commande de r glage du volume sonore Afb 2 Volumeregelaar Fig 2 Regulador de volumen de sonido Figure 2 regolatore di volume sonoro...

Page 44: ...44 7 13 5 4 8 9 9 2 8 12 12 11 12 12 10 3 12 9 14 6 1 14 1 14 Details der Darstellung k nnen von dem Modell abweichen...

Page 45: ...45 18 26 25 7 24 23 22 12 30 29 23 10 32 23 27 25 28 17 32 22 5 21 15 16 10 13 13 10 17 20 19 31 13 10 7 Details der Darstellung k nnen von dem Modell abweichen...

Page 46: ...46 10 33 35 36 10 35 34 10 40 12 34 34 10 38 37 34 10 4 34 39 41 34 41 Details der Darstellung k nnen von dem Modell abweichen...

Page 47: ...23 Bleche Federn Dr hte E315 537 24 Zugfeder v Vorl ufer E174 641 25 Gest nge E315 538 26 Unterlegscheibe E126 053 27 Kuppelstange E315 543 28 Radsatz E174 467 29 Radsatz E174 451 30 Radsatz E298 231...

Page 48: ...ary Use in the USA without this certification is not permitted and absolves us of any liability If you should want such certification to be done please contact us also due to the additional costs incu...

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